Knitted fabric pressing machine based on fabric thickness adjustment

By designing anti-offset pre-pressing components and adaptive pressing components, the problem of fabric offset in knitted fabric pressing machines is solved, improving the flatness and bonding strength of the fabric, and ensuring product quality and pressing efficiency.

CN223644450UActive Publication Date: 2025-12-09GUANGDONG XIANGQIFU IND CO LTD
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Patent Information

Application Number
CN202522335562.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2025-12-09
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

Existing knitted fabric pressing machines lack effective positioning and correction mechanisms, which makes it easy for multi-layered fabrics to shift during pressing, resulting in uneven thickness and affecting the flatness, bonding strength and quality stability of the product.

Method used

It adopts an anti-deviation pre-pressing component and an adaptive pressing component. The U-shaped adjusting plate and pressing roller are used to position and adjust the fabric by gravity. Combined with the rubber guide roller and ratchet plate structure, it prevents the fabric from deviating. The pressing force is adjusted by adjusting the water tank to adapt to changes in fabric thickness.

Benefits of technology

It effectively prevents the fabric from shifting during high-speed operation, improves the flatness and bonding strength of the composite fabric, ensures product quality, and improves pressing efficiency and uniformity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a knitted fabric pressing machine based on fabric thickness adjustment, which relates to the technical field of knitted fabric pressing machines and comprises a machine base, two pressing partition plates are oppositely arranged on the upper side of the machine base, the same rotary top cover is arranged on the upper sides of the two pressing partition plates, and the same feeding rotary door is arranged on one sides of the two pressing partition plates. The knitted fabric pressing machine based on fabric thickness adjustment has the advantages that a plurality of pieces of fabric are always centered and aligned under the action of two adjustable U-shaped adjusting plates in the anti-deviation pre-pressing assembly, so that the situation that the position of the fabric is extremely easy to deviate during high-speed or continuous operation is avoided; due to the fact that the multiple pressing rollers press the fabric in a gravity mode, the fabric cannot be kept in a preset alignment state when entering the pressing area, the flatness and the attaching strength of the composite fabric are improved, the product quality is guaranteed, meanwhile, due to the fact that the multiple pressing rollers press the fabric in a gravity mode, the pressing device can adapt to the change of the thickness of the fabric, and the pressing efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of knitted fabric pressing machine technology, and in particular to a knitted fabric pressing machine based on fabric thickness adjustment. Background Technology

[0002] A knitted fabric pressing machine is a device that processes knitted fabrics through hot pressing or mechanical pressure. It is used to press fabrics to improve their properties, such as enhancing strength, smoothness, and water resistance, and to achieve bonding between different materials. The effects of pressing include improving fabric durability, improving appearance, controlling shrinkage, and increasing functionality, so that the products produced can be widely used in clothing (such as sportswear and outerwear), home textiles, medical supplies (such as bandages), and industrial fabrics.

[0003] Existing knitted fabric laminating machines typically rely on multiple simple guide rollers to directly transport each layer of fabric to the laminating area for lamination when laminating multiple fabrics. During this transport process, due to the lack of an effective positioning and correction mechanism, the fabric is prone to positional shift during high-speed or continuous operation. This results in the fabric failing to maintain the preset alignment when entering the laminating area, leading to uneven fabric thickness distribution. This affects subsequent laminating work based on fabric thickness adjustment, reduces the flatness and bonding strength of the composite fabric, and fails to guarantee product quality. Utility Model Content

[0004] This utility model discloses a knitted fabric pressing machine based on fabric thickness adjustment, aiming to solve the technical problem that existing knitted fabric pressing machines lack an effective positioning and correction mechanism, which leads to the easy displacement and uneven thickness of multi-layer fabrics during pressing, affecting the flatness, bonding strength and quality stability of the product.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a knitted fabric pressing machine based on fabric thickness adjustment, comprising: a machine base, two pressing partitions opposite each other on the upper side of the machine base, a common rotating top cover on the upper side of the two pressing partitions, and a common feeding rotating door on one side of the two pressing partitions; a feeding platform, fixedly connected to the side of the machine base near the feeding rotating door, and a discharging platform fixedly connected to the side of the machine base away from the feeding platform; a control panel, disposed on the upper side of one of the pressing partitions; an anti-deviation pre-pressing component, disposed on the upper side of the feeding platform, used to prevent multiple fabrics from shifting before pressing; and an adaptive pressing component, disposed between the two pressing partitions, used to press multiple layers of fabric.

[0006] In a preferred embodiment, the anti-deviation preload assembly includes: fixed partitions, two fixed partitions are fixedly connected to the upper side of the feed table, and multiple rotating holes are equally spaced on opposite sides of the two fixed partitions. The interior of each pair of opposite rotating holes is connected to the same rubber guide roller through a bearing, and ratchet wheels are fixedly connected to the outer walls of the two fixed partitions at both ends of the multiple rubber guide rollers.

[0007] In a preferred embodiment, the anti-deviation preload assembly further includes: a sliding plate, wherein multiple sliding plates are fixedly connected at equal intervals to the outer wall of one side of two fixed partitions that are far apart from each other, the multiple sliding plates are located above the corresponding ratchet, and ratchet plates are slidably connected inside the multiple sliding plates, and one end of two locking springs is fixedly connected at equal intervals to one side of the multiple ratchet plates, the other end of the multiple locking springs is fixedly connected to the corresponding sliding plate, and the multiple ratchet plates are engaged with the corresponding ratchet; and two rotating shafts, wherein two rotating shafts are connected to the inside of one end of the two fixed partitions on the same side through bearings, and U-shaped adjusting plates are fixedly connected to the outer wall of the two rotating shafts, and multiple positioning guide rollers are connected at equal intervals inside the two U-shaped adjusting plates through bearings.

[0008] In a preferred embodiment, the anti-deviation preload assembly further includes: a rotating shaft connected to the upper side of one of the fixed partitions via a bearing, a brake gear fixedly connected to the outer wall of the rotating shaft, and a driven gear fixedly connected to the upper outer wall of the rotating shaft located inside one of the fixed partitions, the driven gear meshing with the brake gear; a transmission belt disposed inside the rotating shaft and the outer wall of the rotating shaft in another fixed partition; and an adjusting motor fixedly connected to the upper side of the other fixed partition, the drive end of the adjusting motor being connected to one end of the corresponding rotating shaft via a coupling.

[0009] In a preferred embodiment, the anti-deviation preload assembly further includes: a preload auxiliary roller connected to one side of two fixed partitions via bearings; two sliding rods, each fixedly connected to a slot on one side of a corresponding fixed partition, with L-shaped sliding plates slidably connected to the outer walls of the two sliding rods, and the same preload roller connected to one side of the two L-shaped sliding plates via bearings, the preload roller being located directly above the preload auxiliary roller; and two compression springs, each sleeved on the outer wall of a corresponding sliding rod, one end of each compression spring being fixedly connected to the upper side of the corresponding L-shaped sliding plate, and the other end of each compression spring being fixedly connected to the inner wall of the corresponding fixed partition.

[0010] In a preferred embodiment, the adaptive pressing assembly includes: pressing auxiliary rollers, multiple pressing auxiliary rollers being connected at equal intervals to opposite sides of two pressing partitions via bearings; fixing rods, multiple fixing rods being fixedly connected at equal intervals inside the two pressing partitions, the outer walls of two fixing rods located inside the same pressing partition being slidably connected to the same moving plate, multiple fixing blocks being fixedly connected at equal intervals on the upper sides of the two moving plates, the opposite sides of every two opposing fixing blocks being connected to the same pressing roller via bearings, heating rods being provided inside the multiple pressing rollers, multiple through holes being opened at equal intervals on the outer walls of the multiple pressing rollers, and the multiple pressing rollers being located directly above the corresponding pressing auxiliary rollers; and a water storage tank being disposed on the upper side of the rotating top cover.

[0011] In a preferred embodiment, the adaptive pressing assembly further includes: a telescopic spring, wherein multiple telescopic springs are respectively sleeved on the outer wall of the corresponding fixed rod, one end of the multiple telescopic springs is fixedly connected to the lower side of the corresponding movable plate, and the other end of the multiple telescopic springs is fixedly connected to the inner wall of the corresponding pressing partition; an adjusting water tank, wherein two adjusting water tanks are respectively disposed on the upper side of the corresponding movable plate; and a water outlet pipe, disposed on one side of the water storage tank, wherein a water pump is disposed on the outer wall of the water outlet pipe, and a diverter pipe is inserted into the water outlet end of the water outlet pipe, wherein the two water outlet ends of the diverter pipe are respectively inserted into the interior of the two adjusting water tanks.

[0012] As can be seen from the above, the knitted fabric pressing machine based on fabric thickness adjustment provided by this utility model has the effect of using two adjustable U-shaped adjustment plates in the anti-deviation pre-pressing component to keep multiple fabrics always centered and aligned, avoiding the easy positional deviation of the fabric during high-speed or continuous operation, which would cause the fabric to fail to maintain the preset alignment state when entering the pressing zone, thus improving the flatness and bonding strength of the composite fabric and ensuring product quality. At the same time, since multiple pressing rollers press the fabric by gravity, it can adapt to changes in fabric thickness and improve pressing efficiency. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of a knitted fabric pressing machine based on fabric thickness adjustment proposed in this utility model;

[0014] Figure 2 This is a schematic diagram of the overall structure of the anti-deviation pre-compression component of a knitted fabric pressing machine based on fabric thickness adjustment proposed in this utility model.

[0015] Figure 3 This is an exploded view of the anti-deviation pre-compression component of a knitted fabric pressing machine based on fabric thickness adjustment proposed in this utility model.

[0016] Figure 4This is a schematic diagram of the internal cross-sectional structure of the pressing partition of a knitted fabric pressing machine based on fabric thickness adjustment proposed in this utility model.

[0017] Figure 5 This is a schematic diagram of the overall structure of the adaptive pressing component of a knitted fabric pressing machine based on fabric thickness adjustment proposed in this utility model.

[0018] In the attached diagram: 1. Feeding platform; 2. Anti-deviation pre-compression assembly; 201. Compression spring; 202. Fixed partition; 203. Sliding rod; 204. Pre-compression auxiliary roller; 205. Slide plate; 206. Racket plate; 207. Ratchet; 208. Rubber guide roller; 209. Positioning guide roller; 210. U-shaped adjusting plate; 211. Rotating shaft; 212. Driven gear; 213. Brake gear; 214. Rotating shaft; 215. Pre-compression roller; 216. L-shaped sliding plate; 217. Locking spring. 1. Spring; 218. Adjusting motor; 219. Drive belt; 3. Feeding rotary door; 4. Pressing partition; 5. Adaptive pressing assembly; 501. Diverter pipe; 502. Moving plate; 503. Pressing auxiliary roller; 504. Pressing roller; 505. Water storage tank; 506. Heating rod; 507. Telescopic spring; 508. Adjusting water tank; 509. Water outlet pipe; 510. Water pump; 511. Fixing rod; 512. Fixing block; 6. Rotating top cover; 7. Control panel; 8. Discharge platform; 9. Machine base. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0020] The knitted fabric pressing machine disclosed in this utility model is mainly used in scenarios where existing knitted fabric pressing machines lack an effective positioning and correction mechanism, causing multi-layered fabrics to easily shift and have uneven thickness during pressing, affecting the flatness, bonding strength and quality stability of the product.

[0021] Reference Figure 1 and Figure 4A knitted fabric pressing machine based on fabric thickness adjustment includes: a base 9, with two pressing partitions 4 opposite each other on the upper side of the base 9, a common rotating top cover 6 on the upper side of the two pressing partitions 4, and a common feeding rotating door 3 on one side of the two pressing partitions 4; a feeding platform 1, fixedly connected to the side of the base 9 near the feeding rotating door 3, and a discharging platform 8 fixedly connected to the side of the base 9 away from the feeding platform 1; a control panel 7, located on the upper side of one of the pressing partitions 4; an anti-deviation pre-pressing component 2, located on the upper side of the feeding platform 1, used to prevent multiple fabrics from shifting before pressing; and an adaptive pressing component 5, located between the two pressing partitions 4, used to press multiple layers of fabric.

[0022] Reference Figures 1-3 In a preferred embodiment, the anti-deviation preload assembly 2 includes: a fixed partition 202, two fixed partitions 202 are fixedly connected to the upper side of the feed table 1, and multiple rotating holes are equally spaced on opposite sides of the two fixed partitions 202. The interior of each pair of opposite rotating holes is connected to the same rubber guide roller 208 through a bearing. The multiple rubber guide rollers 208 are located at the outer walls of the two ends of the two fixed partitions 202 and are respectively fixedly connected to ratchet wheels 207.

[0023] In this scheme, the anti-deviation preload assembly 2 further includes: a sliding plate 205, multiple sliding plates 205 are fixedly connected at equal intervals to the outer wall of the two fixed partitions 202 on opposite sides, multiple sliding plates 205 are located above the corresponding ratchet 207, ratchet plates 206 are slidably connected inside the multiple sliding plates 205, one end of two locking springs 217 is fixedly connected at equal intervals to one side of the multiple ratchet plates 206, the other end of the multiple locking springs 217 is fixedly connected to the corresponding sliding plate 205, and the multiple ratchet plates 206 are engaged with the corresponding ratchet 207; and a rotating shaft 211, two rotating shafts 211 are respectively connected to the inside of the two fixed partitions 202 on the same side through bearings, U-shaped adjusting plates 210 are fixedly connected to the outer wall of the two rotating shafts 211, and multiple positioning guide rollers 209 are connected at equal intervals through bearings inside the two U-shaped adjusting plates 210.

[0024] In this scheme, the anti-deviation preload assembly 2 further includes: a rotating shaft 214, which is connected to the upper side of one of the fixed partitions 202 via bearings, and a brake gear 213 is fixedly connected to the outer wall of the rotating shaft 214. A driven gear 212 is fixedly connected to the upper outer wall of the rotating shaft 211 located inside one of the fixed partitions 202, and the driven gear 212 meshes with the brake gear 213; a transmission belt 219, which is disposed on the outer wall of the rotating shaft 211 and the rotating shaft 214 inside the other fixed partition 202; and an adjusting motor 218, which is fixedly connected to the upper side of the other fixed partition 202, and the drive end of the adjusting motor 218 is connected to one end of the corresponding rotating shaft 211 via a coupling.

[0025] In this scheme, the anti-deviation preload assembly 2 further includes: a preload auxiliary roller 204, which is connected to the opposite side of two fixed partitions 202 via bearings; two sliding rods 203, which are respectively fixedly connected to the inside of the slots opened on one side of the corresponding fixed partitions 202, and L-shaped sliding plates 216 are slidably connected to the outer walls of the two sliding rods 203, and the same preload roller 215 is connected to the opposite side of the two L-shaped sliding plates 216 via bearings, with the preload roller 215 located directly above the preload auxiliary roller 204; and two compression springs 201, which are respectively sleeved on the outer walls of the corresponding sliding rods 203, with one end of the two compression springs 201 fixedly connected to the upper side of the corresponding L-shaped sliding plate 216, and the other end of the two compression springs 201 fixedly connected to the inner wall of the corresponding fixed partition 202.

[0026] During the pressing process of multiple fabrics, the motor 218 is adjusted to rotate one of the rotating shafts 211. Under the action of the transmission belt 219, brake gear 213, and driven gear 212, the other rotating shaft 211 rotates simultaneously. The opening and closing angles of the two U-shaped adjusting plates 210 can be adjusted by the two rotating shafts 211, allowing workers to make adaptive adjustments according to the width of the fabric. Simultaneously, during continuous operation, the positioning guide rollers 209 at the upper ends of the two U-shaped adjusting plates 210 ensure that the multiple fabrics remain centered and aligned, preventing positional shifts during high-speed or continuous operation. This prevents the fabrics from failing to maintain the preset alignment when entering the pressing area, improving the flatness and bonding strength of the composite fabric. To ensure product quality, the two fabrics pass through the middle of the corresponding two rubber guide rollers 208. During this process, the ratchet plate 206 is always engaged with the corresponding ratchet 207 under the compression of the corresponding locking spring 217. Therefore, under this action, the multiple rubber guide rollers 208 can only rotate along the feeding direction, thus avoiding the situation where the fabric is misaligned due to backflow when feeding the fabric between the two rubber guide rollers 208. Subsequently, the two combined fabrics are passed between the pre-pressing auxiliary roller 204 and the pre-pressing roller 215. During this process, the pre-pressing roller 215 pre-presses the fabric under the action of the two compression springs 201, ensuring that the two fabrics are always in a close fit before being conveyed to the pressing area, and avoiding the situation where they lift up before being conveyed to the pressing area.

[0027] Reference Figure 1 , Figure 4 and Figure 5 In a preferred embodiment, the adaptive pressing assembly 5 includes: pressing auxiliary rollers 503, multiple pressing auxiliary rollers 503 being connected at equal intervals to opposite sides of two pressing partitions 4 via bearings; fixing rods 511, multiple fixing rods 511 being fixedly connected at equal intervals inside the two pressing partitions 4, the outer walls of two fixing rods 511 located inside the same pressing partition 4 being slidably connected to the same moving plate 502, multiple fixing blocks 512 being fixedly connected at equal intervals on the upper sides of the two moving plates 502, the opposite sides of every two opposing fixing blocks 512 being connected to the same pressing roller 504 via bearings, heating rods 506 being provided inside the multiple pressing rollers 504, multiple through holes being opened at equal intervals on the outer walls of the multiple pressing rollers 504, the multiple pressing rollers 504 being located directly above the corresponding pressing auxiliary rollers 503; and a water storage tank 505, located on the upper side of the rotating top cover 6.

[0028] In this scheme, the adaptive pressing assembly 5 also includes: a telescopic spring 507, multiple telescopic springs 507 are respectively sleeved on the outer wall of the corresponding fixed rod 511, one end of the multiple telescopic springs 507 is fixedly connected to the lower side of the corresponding moving plate 502, and the other end of the multiple telescopic springs 507 is fixedly connected to the inner wall of the corresponding pressing partition 4; a regulating water tank 508, two regulating water tanks 508 are respectively set on the upper side of the corresponding moving plate 502; a water outlet pipe 509 is set on one side of the water storage tank 505, a water pump 510 is set on the outer wall of the water outlet pipe 509, a diversion pipe 501 is inserted into the water outlet end of the water outlet pipe 509, and the two water outlet ends of the diversion pipe 501 are respectively inserted into the interior of the two regulating water tanks 508.

[0029] When pressing the fabric, multiple pressing rollers 504 press the fabric by gravity, which can be adaptively adjusted based on the fabric thickness. In addition, the operator can use a water pump 510 to transport the liquid in the water storage tank 505 to the inside of the two regulating water tanks 508 through the diversion pipe 501. This allows the operator to freely adjust the pressing force on the fabric by increasing or decreasing the gravity, which significantly improves the uniformity of the pressing quality, protects thin areas, and firmly presses the thick areas.

[0030] Working Principle: During operation, the motor 218 is first adjusted to rotate one of the rotating shafts 211. This, in turn, causes the other rotating shaft 211 to rotate simultaneously via the transmission belt 219, brake gear 213, and driven gear 212. The two rotating shafts 211 allow for adjustment of the opening angle of the two U-shaped adjusting plates 210, enabling workers to adapt to the fabric thickness. During continuous operation, the positioning guide rollers 209 at the upper ends of the two U-shaped adjusting plates 210 ensure that multiple fabrics remain centered and aligned, preventing positional shifts during high-speed or continuous operation. This prevents the fabrics from failing to maintain their preset alignment when entering the pressing zone, improving the flatness and bonding strength of the composite fabric and ensuring product quality. Two fabrics pass between their corresponding rubber guide rollers 208. During this process, the ratchet plate 206 is constantly engaged with the corresponding ratchet 207 under the pressure of the corresponding locking spring 217. Therefore, this action ensures that all rubber guide rollers 208 can only rotate along the feeding direction, thus preventing shifting. When the fabric is fed between the two rubber guide rollers 208, a backflow occurs, causing the fabric to misalign. Subsequently, the two combined fabrics are passed between the pre-pressing auxiliary roller 204 and the pre-pressing roller 215. During this process, the pre-pressing roller 215 pre-presses the fabric under the action of two compression springs 201, ensuring that the two fabrics remain in close contact before being conveyed to the pressing area, preventing any lifting before reaching the pressing area. Then, the combined fabrics are passed between multiple pressing rollers 504 and multiple pressing auxiliary rollers 503. During the process, since multiple pressing rollers 504 press the fabric by gravity, the pressing force can be adaptively adjusted based on the fabric thickness. In addition, the operator can use the water pump 510 to transport the liquid in the water storage tank 505 through the diversion pipe 501 to the inside of the two regulating water tanks 508, so as to freely adjust the pressing force on the fabric by increasing or decreasing the gravity, which significantly improves the uniformity of the pressing quality, protects the thin areas, and presses the thick areas firmly. After pressing, the fabric is connected to the subsequent winding device for winding after passing through the discharge table 8.

[0031] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. The substitutions may be replacements of some structures, devices, or method steps, or they may be complete technical solutions. Equivalent substitutions or modifications made based on the technical solution and inventive concept of this utility model should all be covered within the protection scope of this utility model.

Claims

1. A knitted fabric pressing machine based on fabric thickness adjustment, characterized in that, include: The machine base (9) has two pressing partitions (4) arranged opposite each other on its upper side. The two pressing partitions (4) have the same rotating top cover (6) on their upper sides. The two pressing partitions (4) have the same feeding rotating door (3) on one side. The feeding platform (1) is fixedly connected to the side of the machine base (9) near the feeding rotating door (3). The side of the machine base (9) away from the feeding platform (1) is fixedly connected to the discharge platform (8). The control panel (7) is set on the upper side of one of the pressing partitions (4). The anti-deviation pre-pressing component (2) is set on the upper side of the feeding platform (1). The anti-deviation pre-pressing component (2) is used to prevent multiple fabrics from shifting before pressing. The adaptive pressing component (5) is set between the two pressing partitions (4). The adaptive pressing component (5) is used to press multiple layers of fabric.

2. The knitted fabric pressing machine based on fabric thickness adjustment according to claim 1, characterized in that, The anti-deviation preload assembly (2) includes: a fixed partition (202), two fixed partitions (202) are fixedly connected to the upper side of the feed table (1), and multiple rotating holes are equally spaced on the opposite side of the two fixed partitions (202). The same rubber guide roller (208) is connected to the interior of each pair of opposite rotating holes through a bearing. Ratchets (207) are fixedly connected to the outer walls of the two ends of the multiple rubber guide rollers (208) outside the two fixed partitions (202).

3. A knitted fabric pressing machine based on fabric thickness adjustment according to claim 2, characterized in that, The anti-deviation preload assembly (2) further includes: a slide plate (205), multiple slide plates (205) are fixedly connected at equal intervals to the outer wall of the two fixed partitions (202) on opposite sides, multiple slide plates (205) are located above the corresponding ratchet (207), ratchet plates (206) are slidably connected inside the multiple slide plates (205), and one end of two locking springs (217) are fixedly connected at equal intervals to one side of the multiple ratchet plates (206). 7) The other end is fixedly connected to the corresponding slide plate (205), and multiple ratchet plates (206) are engaged with the corresponding ratchet (207); rotating shaft (211), two rotating shafts (211) are respectively connected to the inside of one end of two fixed partitions (202) on the same side through bearings, and U-shaped adjusting plates (210) are fixedly connected to the outer walls of the two rotating shafts (211), and multiple positioning guide rollers (209) are connected at equal intervals through bearings inside the two U-shaped adjusting plates (210).

4. A knitted fabric pressing machine based on fabric thickness adjustment according to claim 3, characterized in that, The anti-deviation preload assembly (2) further includes: a rotating shaft (214), which is connected to the upper side of one of the fixed partitions (202) by a bearing, and a brake gear (213) is fixedly connected to the outer wall of the rotating shaft (214). A driven gear (212) is fixedly connected to the upper outer wall of the rotating shaft (211) located inside one of the fixed partitions (202), and the driven gear (212) meshes with the brake gear (213); a transmission belt (219), which is set on the outer wall of the rotating shaft (211) and the rotating shaft (214) inside the other fixed partition (202); and an adjusting motor (218), which is fixedly connected to the upper side of the other fixed partition (202). The driving end of the adjusting motor (218) is connected to one end of the corresponding rotating shaft (211) through a coupling.

5. A knitted fabric pressing machine based on fabric thickness adjustment according to claim 2, characterized in that, The anti-deviation preload assembly (2) further includes: a preload auxiliary roller (204), which is connected to the opposite side of the two fixed partitions (202) by bearings; a sliding rod (203), which is fixedly connected to the slots opened on the side of the corresponding fixed partitions (202), and the outer walls of the two sliding rods (203) are slidably connected to L-shaped sliding plates (216), and the opposite sides of the two L-shaped sliding plates (216) are connected to the same preload roller (215) by bearings, and the preload roller (215) is located directly above the preload auxiliary roller (204); and a compression spring (201), which is sleeved on the outer wall of the corresponding sliding rod (203), one end of the two compression springs (201) is fixedly connected to the upper side of the corresponding L-shaped sliding plate (216), and the other end of the two compression springs (201) is fixedly connected to the inner wall of the corresponding fixed partition (202).

6. A knitted fabric pressing machine based on fabric thickness adjustment according to claim 1, characterized in that, The adaptive pressing assembly (5) includes: pressing auxiliary rollers (503), multiple pressing auxiliary rollers (503) are connected at equal intervals to the opposite side of two pressing partitions (4) via bearings; fixing rods (511), multiple fixing rods (511) are fixedly connected at equal intervals to the inside of two pressing partitions (4), the outer walls of two fixing rods (511) located inside the same pressing partition (4) are slidably connected to the same moving plate (502), multiple fixing blocks (512) are fixedly connected at equal intervals to the upper side of the two moving plates (502), the opposite side of each pair of opposite fixing blocks (512) is connected to the same pressing roller (504) via bearings, heating rods (506) are respectively provided inside the multiple pressing rollers (504), multiple through holes are respectively opened at equal intervals on the outer walls of the multiple pressing rollers (504), and the multiple pressing rollers (504) are located directly above the corresponding pressing auxiliary rollers (503); and a water storage tank (505) is provided on the upper side of the rotating top cover (6).

7. A knitted fabric pressing machine based on fabric thickness adjustment according to claim 6, characterized in that, The adaptive pressing assembly (5) further includes: a telescopic spring (507), multiple telescopic springs (507) are respectively sleeved on the outer wall of the corresponding fixed rod (511), one end of the multiple telescopic springs (507) is fixedly connected to the lower side of the corresponding moving plate (502), and the other end of the multiple telescopic springs (507) is fixedly connected to the inner wall of the corresponding pressing partition (4); a regulating water tank (508), two regulating water tanks (508) are respectively set on the upper side of the corresponding moving plate (502); a water outlet pipe (509), set on one side of the water storage tank (505), a water pump (510) is set on the outer wall of the water outlet pipe (509), and a diversion pipe (501) is inserted into the water outlet end of the water outlet pipe (509), and the two water outlet ends of the diversion pipe (501) are respectively inserted into the interior of the two regulating water tanks (508).